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Diagnostic imaging in near‐infrared photoimmunotherapy using a commercially available camera for indocyanine green

机译:使用商用相机用于吲哚菁绿的近红外光瘤诊断成像

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摘要

Near‐infrared photoimmunotherapy (NIR‐PIT) is a new type of cancer treatment, which was recently approved in Japan for patients with inoperable head and neck cancer. NIR‐PIT utilizes antibody‐IRDye700DX (IR700) conjugates and NIR light at a wavelength of 690 nm. NIR light exposure leads to physicochemical changes in the antibody‐IR700 conjugate cell receptor complex, inducing rapid necrotic cell death. Just as fluorescence guided surgery is useful for surgeons to resect tumors completely, real‐time information of tumor locations would help clinicians irradiate NIR light more precisely. IR700 is a fluorescence dye that emits at 702 nm; however, there is no clinically available device optimized for detecting this fluorescence. On the other hand, many indocyanine green (ICG) fluorescence imaging devices have been approved for clinical use. Therefore, we investigated whether LIGHTVISION, one of the clinically available ICG cameras, could be employed for tumor detection. We hypothesized that irradiation with even low‐power 690‐nm laser light, attenuated by 99% with a neutral‐density filter, could be detected with LIGHTVISION without fluorescence decay or therapeutic effect because of the long emission tail of IR700 beyond 800 nm (within the detection range of LIGHTVISION). We demonstrated that the LIGHTVISION camera, originally designed for ICG detection, can detect the tail of IR700 fluorescence in real time, thus enabling the visualization of target tumors.
机译:近红外线光疗法(NIR-PIT)是一种新型的癌症治疗,最近在日本批准用于颈部癌症不可操作的患者。 NIR-PIT利用抗体 - IRDYE700DX(IR700)缀合物和690nm波长的NIR光。 NIR光暴露导致抗体-R700共轭细胞受体复合物的物理化学变化,诱导迅速的坏死性细胞死亡。正如荧光导向手术对于外科医生完全解除肿瘤,肿瘤位置的实时信息会帮助临床医生更准确地照射NIR光线。 IR700是荧光染料,可在702nm处发射;然而,没有临床上可用的装置优化用于检测该荧光。另一方面,许多吲哚菁绿(ICG)荧光成像装置已被批准用于临床使用。因此,我们调查了临床上可用的ICG相机之一的LightVision是否可以用于肿瘤检测。我们假设用甚至低功率690-nm激光照射,通过中性密度过滤器衰减99%,通过荧光衰减或治疗效果,由于IR700超过800nm的长发射尾(内部) LightVision的检测范围)。我们证明,最初设计用于ICG检测的闪光摄像机可以实时检测IR700荧光的尾部,从而能够实现靶肿瘤的可视化。

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